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PMID: 11851398 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Identification of an active site ligand for a group I ribozyme catalytic metal ion.

Biochemistry ·Vol. 41 ·No. 8 ·2002-02-26 ·Pages 2516-25

Szewczak AA, Kosek AB, Piccirilli JA, Strobel SA

Abstract

The transition state of the group I intron self-splicing reaction is stabilized by three metal ions. The functional groups within the intron substrates (guanosine and an oligoribonucleotide mimic of the 5'-exon) that coordinate these metal ions have been systematically defined through a series of metal ion specificity switch experiments. In contrast, the catalytic metal ligands within the ribozyme active site are unknown. In an effort to identify them, stereospecific (R(P) or S(P)) single-site phosphorothioate substitutions were introduced at five phosphates predicted to be in the vicinity of the catalytic center (A207, C208, A304, U305, and A306) within the Tetrahymena intron. Of the 10 ribozymes that were studied, four phosphorothioate substitutions (A207 S(P), C208 S(P), A306 R(P), and A306 S(P)) exhibited a significant reduction in the cleavage rate. Only the effect of the C208 S(P) phosphorothioate substitution could be significantly rescued by the addition of a thiophilic metal ion, either Mn(2+) or Zn(2+), when tested with an all-oxy substrate. The effect was not rescued with Cd(2+). To determine if one of the catalytic metal ions is coordinated to the C208 pro-S(P) oxygen, the phosphorothioate-substituted ribozymes were also assayed using oligonucleotide substrates with a 3'-phosphorothiolate or an S(P) phosphorothioate substitution at the scissile phosphate. This resulted in a second metal specificity switch, in that Mn(2+) or Zn(2+) no longer rescued the C208 S(P) ribozyme, but Cd(2+) provided efficient rescue in the context of either sulfur-containing substrate. The 3'-oxygen and the pro-S(P) oxygen of the scissile phosphate are both known to coordinate the same metal ion, M(A), which stabilizes the negative charge on the leaving group 3'-oxygen in the transition state. Taken together, these data suggest that metal M(A) is coordinated to the C208 pro-S(P) phosphate oxygen, which constitutes the first functional link between a specific catalytic metal ion and a particular functional group within the group I ribozyme active site.

MeSH Terms
Animals Base Sequence Binding Sites Catalysis DNA Primers Ligands Metals/metabolism Protein Conformation RNA, Catalytic/chemistry,metabolism RNA, Protozoan/chemistry,metabolism Tetrahymena/enzymology,genetics Thionucleotides/metabolism
Chemicals
DNA Primers Ligands Metals RNA, Catalytic RNA, Protozoan Thionucleotides
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Szewczak Alexander A
Department of Molecular Biophysics, Yale University, New Haven, Connecticut 06520-8114, USA.
Kosek Anne B
Piccirilli Joseph A
Strobel Scott A
Article Info
Journal
Biochemistry
Abbr.
Biochemistry
ISSN
0006-2960
Published
2002-02-26
Pages
2516-25
Language
English
Region
United States
NLM ID
0370623
Subset
IM
Grants
NIGMS NIH HHS · GM54839 · United States
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